sql_repl.cc 44.4 KB
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/* Copyright (C) 2000 MySQL AB & MySQL Finland AB & TCX DataKonsult AB & Sasha
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   This program is free software; you can redistribute it and/or modify
   it under the terms of the GNU General Public License as published by
   the Free Software Foundation; either version 2 of the License, or
   (at your option) any later version.

   This program is distributed in the hope that it will be useful,
   but WITHOUT ANY WARRANTY; without even the implied warranty of
   MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
   GNU General Public License for more details.

   You should have received a copy of the GNU General Public License
   along with this program; if not, write to the Free Software
   Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA  02111-1307  USA */

#include "mysql_priv.h"
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#ifdef HAVE_REPLICATION

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#include "sql_repl.h"
#include "log_event.h"
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#include <my_dir.h>
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int max_binlog_dump_events = 0; // unlimited
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my_bool opt_sporadic_binlog_dump_fail = 0;
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static int binlog_dump_count = 0;
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/*
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    fake_rotate_event() builds a fake (=which does not exist physically in any
    binlog) Rotate event, which contains the name of the binlog we are going to
    send to the slave (because the slave may not know it if it just asked for
    MASTER_LOG_FILE='', MASTER_LOG_POS=4).
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    < 4.0.14, fake_rotate_event() was called only if the requested pos was 4.
    After this version we always call it, so that a 3.23.58 slave can rely on
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    it to detect if the master is 4.0 (and stop) (the _fake_ Rotate event has
    zeros in the good positions which, by chance, make it possible for the 3.23
    slave to detect that this event is unexpected) (this is luck which happens
    because the master and slave disagree on the size of the header of
    Log_event).
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    Relying on the event length of the Rotate event instead of these
    well-placed zeros was not possible as Rotate events have a variable-length
    part.
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*/

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static int fake_rotate_event(NET* net, String* packet, char* log_file_name,
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                             ulonglong position, const char** errmsg)
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{
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  DBUG_ENTER("fake_rotate_event");
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  char header[LOG_EVENT_HEADER_LEN], buf[ROTATE_HEADER_LEN+100];
  /*
    'when' (the timestamp) is set to 0 so that slave could distinguish between
    real and fake Rotate events (if necessary)
  */
  memset(header, 0, 4);
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  header[EVENT_TYPE_OFFSET] = ROTATE_EVENT;

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  char* p = log_file_name+dirname_length(log_file_name);
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  uint ident_len = (uint) strlen(p);
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  ulong event_len = ident_len + LOG_EVENT_HEADER_LEN + ROTATE_HEADER_LEN;
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  int4store(header + SERVER_ID_OFFSET, server_id);
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  int4store(header + EVENT_LEN_OFFSET, event_len);
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  int2store(header + FLAGS_OFFSET, 0);
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  // TODO: check what problems this may cause and fix them
  int4store(header + LOG_POS_OFFSET, 0);
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  packet->append(header, sizeof(header));
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  int8store(buf+R_POS_OFFSET,position);
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  packet->append(buf, ROTATE_HEADER_LEN);
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  packet->append(p,ident_len);
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  if (my_net_write(net, (char*)packet->ptr(), packet->length()))
  {
    *errmsg = "failed on my_net_write()";
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    DBUG_RETURN(-1);
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  }
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  DBUG_RETURN(0);
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}

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static int send_file(THD *thd)
{
  NET* net = &thd->net;
  int fd = -1,bytes, error = 1;
  char fname[FN_REFLEN+1];
  const char *errmsg = 0;
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  int old_timeout;
  uint packet_len;
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  char buf[IO_SIZE];				// It's safe to alloc this
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  DBUG_ENTER("send_file");

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  /*
    The client might be slow loading the data, give him wait_timeout to do
    the job
  */
  old_timeout = thd->net.read_timeout;
  thd->net.read_timeout = thd->variables.net_wait_timeout;

  /*
    We need net_flush here because the client will not know it needs to send
    us the file name until it has processed the load event entry
  */
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  if (net_flush(net) || (packet_len = my_net_read(net)) == packet_error)
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  {
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    errmsg = "while reading file name";
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    goto err;
  }

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  // terminate with \0 for fn_format
  *((char*)net->read_pos +  packet_len) = 0;
  fn_format(fname, (char*) net->read_pos + 1, "", "", 4);
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  // this is needed to make replicate-ignore-db
  if (!strcmp(fname,"/dev/null"))
    goto end;

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  if ((fd = my_open(fname, O_RDONLY, MYF(0))) < 0)
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  {
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    errmsg = "on open of file";
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    goto err;
  }

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  while ((bytes = (int) my_read(fd, (byte*) buf, IO_SIZE, MYF(0))) > 0)
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  {
    if (my_net_write(net, buf, bytes))
    {
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      errmsg = "while writing data to client";
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      goto err;
    }
  }

 end:
  if (my_net_write(net, "", 0) || net_flush(net) ||
      (my_net_read(net) == packet_error))
  {
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    errmsg = "while negotiating file transfer close";
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    goto err;
  }
  error = 0;

 err:
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  thd->net.read_timeout = old_timeout;
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  if (fd >= 0)
    (void) my_close(fd, MYF(0));
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  if (errmsg)
  {
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    sql_print_error("Failed in send_file() %s", errmsg);
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    DBUG_PRINT("error", (errmsg));
  }
  DBUG_RETURN(error);
}

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/*
  Adjust the position pointer in the binary log file for all running slaves

  SYNOPSIS
    adjust_linfo_offsets()
    purge_offset	Number of bytes removed from start of log index file

  NOTES
    - This is called when doing a PURGE when we delete lines from the
      index log file

  REQUIREMENTS
    - Before calling this function, we have to ensure that no threads are
      using any binary log file before purge_offset.a

  TODO
    - Inform the slave threads that they should sync the position
      in the binary log file with flush_relay_log_info.
      Now they sync is done for next read.
*/

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void adjust_linfo_offsets(my_off_t purge_offset)
{
  THD *tmp;
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  pthread_mutex_lock(&LOCK_thread_count);
  I_List_iterator<THD> it(threads);

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  while ((tmp=it++))
  {
    LOG_INFO* linfo;
    if ((linfo = tmp->current_linfo))
    {
      pthread_mutex_lock(&linfo->lock);
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      /*
	Index file offset can be less that purge offset only if
	we just started reading the index file. In that case
	we have nothing to adjust
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      */
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      if (linfo->index_file_offset < purge_offset)
	linfo->fatal = (linfo->index_file_offset != 0);
      else
	linfo->index_file_offset -= purge_offset;
      pthread_mutex_unlock(&linfo->lock);
    }
  }
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  pthread_mutex_unlock(&LOCK_thread_count);
}

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bool log_in_use(const char* log_name)
{
  int log_name_len = strlen(log_name) + 1;
  THD *tmp;
  bool result = 0;
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  pthread_mutex_lock(&LOCK_thread_count);
  I_List_iterator<THD> it(threads);
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  while ((tmp=it++))
  {
    LOG_INFO* linfo;
    if ((linfo = tmp->current_linfo))
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    {
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      pthread_mutex_lock(&linfo->lock);
      result = !memcmp(log_name, linfo->log_file_name, log_name_len);
      pthread_mutex_unlock(&linfo->lock);
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      if (result)
	break;
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    }
  }
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  pthread_mutex_unlock(&LOCK_thread_count);
  return result;
}

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bool purge_error_message(THD* thd, int res)
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{
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  uint errmsg= 0;
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  switch (res)  {
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  case 0: break;
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  case LOG_INFO_EOF:	errmsg= ER_UNKNOWN_TARGET_BINLOG; break;
  case LOG_INFO_IO:	errmsg= ER_IO_ERR_LOG_INDEX_READ; break;
  case LOG_INFO_INVALID:errmsg= ER_BINLOG_PURGE_PROHIBITED; break;
  case LOG_INFO_SEEK:	errmsg= ER_FSEEK_FAIL; break;
  case LOG_INFO_MEM:	errmsg= ER_OUT_OF_RESOURCES; break;
  case LOG_INFO_FATAL:	errmsg= ER_BINLOG_PURGE_FATAL_ERR; break;
  case LOG_INFO_IN_USE: errmsg= ER_LOG_IN_USE; break;
  default:		errmsg= ER_LOG_PURGE_UNKNOWN_ERR; break;
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  }

  if (errmsg)
  {
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    my_message(errmsg, ER(errmsg), MYF(0));
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    return TRUE;
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  }
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  send_ok(thd);
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  return FALSE;
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}

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bool purge_master_logs(THD* thd, const char* to_log)
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{
  char search_file_name[FN_REFLEN];
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  if (!mysql_bin_log.is_open())
  {
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    send_ok(thd);
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    return FALSE;
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  }
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  mysql_bin_log.make_log_name(search_file_name, to_log);
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  return purge_error_message(thd,
			     mysql_bin_log.purge_logs(search_file_name, 0, 1,
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						      1, NULL));
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}


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bool purge_master_logs_before_date(THD* thd, time_t purge_time)
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{
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  if (!mysql_bin_log.is_open())
  {
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    send_ok(thd);
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    return 0;
  }
  return purge_error_message(thd,
                             mysql_bin_log.purge_logs_before_date(purge_time));
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}

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int test_for_non_eof_log_read_errors(int error, const char **errmsg)
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{
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  if (error == LOG_READ_EOF)
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    return 0;
  my_errno= ER_MASTER_FATAL_ERROR_READING_BINLOG;
  switch (error) {
  case LOG_READ_BOGUS:
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    *errmsg = "bogus data in log event";
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    break;
  case LOG_READ_TOO_LARGE:
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    *errmsg = "log event entry exceeded max_allowed_packet; \
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Increase max_allowed_packet on master";
    break;
  case LOG_READ_IO:
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    *errmsg = "I/O error reading log event";
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    break;
  case LOG_READ_MEM:
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    *errmsg = "memory allocation failed reading log event";
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    break;
  case LOG_READ_TRUNC:
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    *errmsg = "binlog truncated in the middle of event";
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    break;
  default:
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    *errmsg = "unknown error reading log event on the master";
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    break;
  }
  return error;
}


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/*
  TODO: Clean up loop to only have one call to send_file()
*/
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void mysql_binlog_send(THD* thd, char* log_ident, my_off_t pos,
		       ushort flags)
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{
  LOG_INFO linfo;
  char *log_file_name = linfo.log_file_name;
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  char search_file_name[FN_REFLEN], *name;
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  IO_CACHE log;
  File file = -1;
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  String* packet = &thd->packet;
  int error;
  const char *errmsg = "Unknown error";
  NET* net = &thd->net;
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  pthread_mutex_t *log_lock;
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  bool binlog_can_be_corrupted= FALSE;
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#ifndef DBUG_OFF
  int left_events = max_binlog_dump_events;
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#endif
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  DBUG_ENTER("mysql_binlog_send");
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  DBUG_PRINT("enter",("log_ident: '%s'  pos: %ld", log_ident, (long) pos));

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  bzero((char*) &log,sizeof(log));
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#ifndef DBUG_OFF
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  if (opt_sporadic_binlog_dump_fail && (binlog_dump_count++ % 2))
  {
    errmsg = "Master failed COM_BINLOG_DUMP to test if slave can recover";
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    my_errno= ER_UNKNOWN_ERROR;
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    goto err;
  }
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#endif
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  if (!mysql_bin_log.is_open())
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  {
    errmsg = "Binary log is not open";
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    my_errno= ER_MASTER_FATAL_ERROR_READING_BINLOG;
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    goto err;
  }
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  if (!server_id_supplied)
  {
    errmsg = "Misconfigured master - server id was not set";
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    my_errno= ER_MASTER_FATAL_ERROR_READING_BINLOG;
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    goto err;
  }

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  name=search_file_name;
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  if (log_ident[0])
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    mysql_bin_log.make_log_name(search_file_name, log_ident);
  else
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    name=0;					// Find first log
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  linfo.index_file_offset = 0;
  thd->current_linfo = &linfo;
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  if (mysql_bin_log.find_log_pos(&linfo, name, 1))
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  {
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    errmsg = "Could not find first log file name in binary log index file";
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    my_errno= ER_MASTER_FATAL_ERROR_READING_BINLOG;
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    goto err;
  }
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  if ((file=open_binlog(&log, log_file_name, &errmsg)) < 0)
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  {
    my_errno= ER_MASTER_FATAL_ERROR_READING_BINLOG;
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    goto err;
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  }
  if (pos < BIN_LOG_HEADER_SIZE || pos > my_b_filelength(&log))
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  {
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    errmsg= "Client requested master to start replication from \
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impossible position";
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    my_errno= ER_MASTER_FATAL_ERROR_READING_BINLOG;
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    goto err;
  }
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  /*
    We need to start a packet with something other than 255
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    to distinguish it from error
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  */
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  packet->set("\0", 1, &my_charset_bin); /* This is the start of a new packet */
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  /*
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    Tell the client about the log name with a fake Rotate event;
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    this is needed even if we also send a Format_description_log_event
    just after, because that event does not contain the binlog's name.
    Note that as this Rotate event is sent before
    Format_description_log_event, the slave cannot have any info to
    understand this event's format, so the header len of
    Rotate_log_event is FROZEN (so in 5.0 it will have a header shorter
    than other events except FORMAT_DESCRIPTION_EVENT).
    Before 4.0.14 we called fake_rotate_event below only if (pos ==
    BIN_LOG_HEADER_SIZE), because if this is false then the slave
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    already knows the binlog's name.
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    Since, we always call fake_rotate_event; if the slave already knew
    the log's name (ex: CHANGE MASTER TO MASTER_LOG_FILE=...) this is
    useless but does not harm much. It is nice for 3.23 (>=.58) slaves
    which test Rotate events to see if the master is 4.0 (then they
    choose to stop because they can't replicate 4.0); by always calling
    fake_rotate_event we are sure that 3.23.58 and newer will detect the
    problem as soon as replication starts (BUG#198).
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    Always calling fake_rotate_event makes sending of normal
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    (=from-binlog) Rotate events a priori unneeded, but it is not so
    simple: the 2 Rotate events are not equivalent, the normal one is
    before the Stop event, the fake one is after. If we don't send the
    normal one, then the Stop event will be interpreted (by existing 4.0
    slaves) as "the master stopped", which is wrong. So for safety,
    given that we want minimum modification of 4.0, we send the normal
    and fake Rotates.
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  */
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  if (fake_rotate_event(net, packet, log_file_name, pos, &errmsg))
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  {
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    /*
       This error code is not perfect, as fake_rotate_event() does not
       read anything from the binlog; if it fails it's because of an
       error in my_net_write(), fortunately it will say so in errmsg.
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    */
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    my_errno= ER_MASTER_FATAL_ERROR_READING_BINLOG;
    goto err;
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  }
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  packet->set("\0", 1, &my_charset_bin);
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  /*
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    We can set log_lock now, it does not move (it's a member of
    mysql_bin_log, and it's already inited, and it will be destroyed
    only at shutdown).
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  */
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  log_lock = mysql_bin_log.get_log_lock();
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  if (pos > BIN_LOG_HEADER_SIZE)
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  {
     /*
       Try to find a Format_description_log_event at the beginning of
       the binlog
     */
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     if (!(error = Log_event::read_log_event(&log, packet, log_lock)))
     {
       /*
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         The packet has offsets equal to the normal offsets in a binlog
         event +1 (the first character is \0).
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       */
       DBUG_PRINT("info",
                  ("Looked for a Format_description_log_event, found event type %d",
                   (*packet)[EVENT_TYPE_OFFSET+1]));
       if ((*packet)[EVENT_TYPE_OFFSET+1] == FORMAT_DESCRIPTION_EVENT)
       {
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         binlog_can_be_corrupted= (*packet)[FLAGS_OFFSET+1] & LOG_EVENT_BINLOG_IN_USE_F;
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         /*
           mark that this event with "log_pos=0", so the slave
           should not increment master's binlog position
           (rli->group_master_log_pos)
         */
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         int4store(packet->c_ptr()+LOG_POS_OFFSET+1, 0);
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         /* send it */
         if (my_net_write(net, (char*)packet->ptr(), packet->length()))
         {
           errmsg = "Failed on my_net_write()";
           my_errno= ER_UNKNOWN_ERROR;
           goto err;
         }
         /*
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           No need to save this event. We are only doing simple reads
           (no real parsing of the events) so we don't need it. And so
           we don't need the artificial Format_description_log_event of
           3.23&4.x.
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         */
       }
     }
     else
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       if (test_for_non_eof_log_read_errors(error, &errmsg))
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         goto err;
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     /*
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        else: it's EOF, nothing to do, go on reading next events, the
        Format_description_log_event will be found naturally if it is written.
     */
     /* reset the packet as we wrote to it in any case */
     packet->set("\0", 1, &my_charset_bin);
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   } /* end of if (pos > BIN_LOG_HEADER_SIZE); if false, the
        Format_description_log_event event will be found naturally. */

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  /* seek to the requested position, to start the requested dump */
  my_b_seek(&log, pos);			// Seek will done on next read

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  while (!net->error && net->vio != 0 && !thd->killed)
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  {
    while (!(error = Log_event::read_log_event(&log, packet, log_lock)))
    {
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#ifndef DBUG_OFF
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      if (max_binlog_dump_events && !left_events--)
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      {
	net_flush(net);
	errmsg = "Debugging binlog dump abort";
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	my_errno= ER_UNKNOWN_ERROR;
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	goto err;
      }
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#endif
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      if ((*packet)[EVENT_TYPE_OFFSET+1] == FORMAT_DESCRIPTION_EVENT)
        binlog_can_be_corrupted= (*packet)[FLAGS_OFFSET+1] & LOG_EVENT_BINLOG_IN_USE_F;
      else if ((*packet)[EVENT_TYPE_OFFSET+1] == STOP_EVENT)
        binlog_can_be_corrupted= FALSE;

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      if (my_net_write(net, (char*)packet->ptr(), packet->length()))
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      {
	errmsg = "Failed on my_net_write()";
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	my_errno= ER_UNKNOWN_ERROR;
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	goto err;
      }
      DBUG_PRINT("info", ("log event code %d",
			  (*packet)[LOG_EVENT_OFFSET+1] ));
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      if ((*packet)[LOG_EVENT_OFFSET+1] == LOAD_EVENT)
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      {
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	if (send_file(thd))
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	{
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	  errmsg = "failed in send_file()";
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	  my_errno= ER_UNKNOWN_ERROR;
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	  goto err;
	}
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      }
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      packet->set("\0", 1, &my_charset_bin);
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    }
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    /*
      here we were reading binlog that was not closed properly (as a result
      of a crash ?). treat any corruption as EOF
    */
    if (binlog_can_be_corrupted && error != LOG_READ_MEM)
      error=LOG_READ_EOF;
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    /*
      TODO: now that we are logging the offset, check to make sure
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      the recorded offset and the actual match.
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      Guilhem 2003-06: this is not true if this master is a slave
      <4.0.15 running with --log-slave-updates, because then log_pos may
      be the offset in the-master-of-this-master's binlog.
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    */
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    if (test_for_non_eof_log_read_errors(error, &errmsg))
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      goto err;
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    if (!(flags & BINLOG_DUMP_NON_BLOCK) &&
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        mysql_bin_log.is_active(log_file_name))
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    {
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      /*
	Block until there is more data in the log
      */
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      if (net_flush(net))
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      {
	errmsg = "failed on net_flush()";
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	my_errno= ER_UNKNOWN_ERROR;
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	goto err;
      }
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      /*
	We may have missed the update broadcast from the log
	that has just happened, let's try to catch it if it did.
	If we did not miss anything, we just wait for other threads
	to signal us.
      */
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      {
	log.error=0;
	bool read_packet = 0, fatal_error = 0;

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#ifndef DBUG_OFF
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	if (max_binlog_dump_events && !left_events--)
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	{
	  errmsg = "Debugging binlog dump abort";
576
	  my_errno= ER_UNKNOWN_ERROR;
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	  goto err;
	}
579
#endif
580

581 582 583 584
	/*
	  No one will update the log while we are reading
	  now, but we'll be quick and just read one record

585
	  TODO:
586 587 588
          Add an counter that is incremented for each time we update the
          binary log.  We can avoid the following read if the counter
          has not been updated since last read.
589
	*/
590

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591
	pthread_mutex_lock(log_lock);
592
	switch (Log_event::read_log_event(&log, packet, (pthread_mutex_t*)0)) {
593
	case 0:
594
	  /* we read successfully, so we'll need to send it to the slave */
595
	  pthread_mutex_unlock(log_lock);
596 597
	  read_packet = 1;
	  break;
598

599
	case LOG_READ_EOF:
600
	  DBUG_PRINT("wait",("waiting for data in binary log"));
601
	  if (thd->server_id==0) // for mysqlbinlog (mysqlbinlog.server_id==0)
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602 603 604 605
	  {
	    pthread_mutex_unlock(log_lock);
	    goto end;
	  }
606
	  if (!thd->killed)
607 608
	  {
	    /* Note that the following call unlocks lock_log */
609
	    mysql_bin_log.wait_for_update(thd, 0);
610 611 612
	  }
	  else
	    pthread_mutex_unlock(log_lock);
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613
	  DBUG_PRINT("wait",("binary log received update"));
614 615 616
	  break;

	default:
617
	  pthread_mutex_unlock(log_lock);
618 619
	  fatal_error = 1;
	  break;
620
	}
621

622
	if (read_packet)
623
	{
624
	  thd->proc_info = "Sending binlog event to slave";
625
	  if (my_net_write(net, (char*)packet->ptr(), packet->length()) )
626 627
	  {
	    errmsg = "Failed on my_net_write()";
628
	    my_errno= ER_UNKNOWN_ERROR;
629 630
	    goto err;
	  }
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631

632
	  if ((*packet)[LOG_EVENT_OFFSET+1] == LOAD_EVENT)
633
	  {
634
	    if (send_file(thd))
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635
	    {
636
	      errmsg = "failed in send_file()";
637
	      my_errno= ER_UNKNOWN_ERROR;
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638 639
	      goto err;
	    }
640
	  }
641
	  packet->set("\0", 1, &my_charset_bin);
642 643 644 645
	  /*
	    No need to net_flush because we will get to flush later when
	    we hit EOF pretty quick
	  */
646
	}
647

648
	if (fatal_error)
649 650
	{
	  errmsg = "error reading log entry";
651
          my_errno= ER_MASTER_FATAL_ERROR_READING_BINLOG;
652
	  goto err;
653
	}
654 655
	log.error=0;
      }
656
    }
657 658 659 660
    else
    {
      bool loop_breaker = 0;
      // need this to break out of the for loop from switch
661
      thd->proc_info = "Finished reading one binlog; switching to next binlog";
662
      switch (mysql_bin_log.find_next_log(&linfo, 1)) {
663 664 665 666 667 668 669
      case LOG_INFO_EOF:
	loop_breaker = (flags & BINLOG_DUMP_NON_BLOCK);
	break;
      case 0:
	break;
      default:
	errmsg = "could not find next log";
670
	my_errno= ER_MASTER_FATAL_ERROR_READING_BINLOG;
671 672 673
	goto err;
      }

674
      if (loop_breaker)
675 676 677 678
	break;

      end_io_cache(&log);
      (void) my_close(file, MYF(MY_WME));
679

680
      /*
681 682 683 684 685 686 687
        Call fake_rotate_event() in case the previous log (the one which
        we have just finished reading) did not contain a Rotate event
        (for example (I don't know any other example) the previous log
        was the last one before the master was shutdown & restarted).
        This way we tell the slave about the new log's name and
        position.  If the binlog is 5.0, the next event we are going to
        read and send is Format_description_log_event.
688
      */
689
      if ((file=open_binlog(&log, log_file_name, &errmsg)) < 0 ||
690 691
	  fake_rotate_event(net, packet, log_file_name, BIN_LOG_HEADER_SIZE,
                            &errmsg))
692 693
      {
	my_errno= ER_MASTER_FATAL_ERROR_READING_BINLOG;
694
	goto err;
695
      }
696
      packet->length(0);
697
      packet->append('\0');
698
    }
699
  }
700

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701
end:
702 703
  end_io_cache(&log);
  (void)my_close(file, MYF(MY_WME));
704

705
  send_eof(thd);
706
  thd->proc_info = "Waiting to finalize termination";
707 708 709
  pthread_mutex_lock(&LOCK_thread_count);
  thd->current_linfo = 0;
  pthread_mutex_unlock(&LOCK_thread_count);
710
  DBUG_VOID_RETURN;
711

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712
err:
713
  thd->proc_info = "Waiting to finalize termination";
714
  end_io_cache(&log);
715 716 717 718 719 720 721
  /*
    Exclude  iteration through thread list
    this is needed for purge_logs() - it will iterate through
    thread list and update thd->current_linfo->index_file_offset
    this mutex will make sure that it never tried to update our linfo
    after we return from this stack frame
  */
722
  pthread_mutex_lock(&LOCK_thread_count);
723 724
  thd->current_linfo = 0;
  pthread_mutex_unlock(&LOCK_thread_count);
725 726
  if (file >= 0)
    (void) my_close(file, MYF(MY_WME));
727
  my_message(my_errno, errmsg, MYF(0));
728 729 730
  DBUG_VOID_RETURN;
}

731
int start_slave(THD* thd , MASTER_INFO* mi,  bool net_report)
732
{
733
  int slave_errno= 0;
734
  int thread_mask;
735
  DBUG_ENTER("start_slave");
736

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737
  if (check_access(thd, SUPER_ACL, any_db,0,0,0))
738
    DBUG_RETURN(1);
739
  lock_slave_threads(mi);  // this allows us to cleanly read slave_running
740
  // Get a mask of _stopped_ threads
741
  init_thread_mask(&thread_mask,mi,1 /* inverse */);
742
  /*
743 744 745 746
    Below we will start all stopped threads.  But if the user wants to
    start only one thread, do as if the other thread was running (as we
    don't wan't to touch the other thread), so set the bit to 0 for the
    other thread
747
  */
748
  if (thd->lex->slave_thd_opt)
749
    thread_mask&= thd->lex->slave_thd_opt;
750
  if (thread_mask) //some threads are stopped, start them
751
  {
752 753
    if (init_master_info(mi,master_info_file,relay_log_info_file, 0,
			 thread_mask))
754 755
      slave_errno=ER_MASTER_INFO;
    else if (server_id_supplied && *mi->host)
756
    {
757 758 759
      /*
         If we will start SQL thread we will care about UNTIL options If
         not and they are specified we will ignore them and warn user
760 761 762 763 764 765
         about this fact.
      */
      if (thread_mask & SLAVE_SQL)
      {
        pthread_mutex_lock(&mi->rli.data_lock);

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766
        if (thd->lex->mi.pos)
767 768
        {
          mi->rli.until_condition= RELAY_LOG_INFO::UNTIL_MASTER_POS;
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769
          mi->rli.until_log_pos= thd->lex->mi.pos;
770 771
          /*
             We don't check thd->lex->mi.log_file_name for NULL here
772 773
             since it is checked in sql_yacc.yy
          */
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774
          strmake(mi->rli.until_log_name, thd->lex->mi.log_file_name,
775
              sizeof(mi->rli.until_log_name)-1);
776
        }
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777
        else if (thd->lex->mi.relay_log_pos)
778 779
        {
          mi->rli.until_condition= RELAY_LOG_INFO::UNTIL_RELAY_POS;
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780 781
          mi->rli.until_log_pos= thd->lex->mi.relay_log_pos;
          strmake(mi->rli.until_log_name, thd->lex->mi.relay_log_name,
782 783 784 785 786 787 788 789 790 791 792 793 794 795 796 797 798 799
              sizeof(mi->rli.until_log_name)-1);
        }
        else
          clear_until_condition(&mi->rli);

        if (mi->rli.until_condition != RELAY_LOG_INFO::UNTIL_NONE)
        {
          /* Preparing members for effective until condition checking */
          const char *p= fn_ext(mi->rli.until_log_name);
          char *p_end;
          if (*p)
          {
            //p points to '.'
            mi->rli.until_log_name_extension= strtoul(++p,&p_end, 10);
            /*
              p_end points to the first invalid character. If it equals
              to p, no digits were found, error. If it contains '\0' it
              means  conversion went ok.
800
            */
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801
            if (p_end==p || *p_end)
802 803 804 805
              slave_errno=ER_BAD_SLAVE_UNTIL_COND;
          }
          else
            slave_errno=ER_BAD_SLAVE_UNTIL_COND;
806

807
          /* mark the cached result of the UNTIL comparison as "undefined" */
808
          mi->rli.until_log_names_cmp_result=
809 810 811 812 813 814 815
            RELAY_LOG_INFO::UNTIL_LOG_NAMES_CMP_UNKNOWN;

          /* Issuing warning then started without --skip-slave-start */
          if (!opt_skip_slave_start)
            push_warning(thd, MYSQL_ERROR::WARN_LEVEL_NOTE, ER_MISSING_SKIP_SLAVE, 
                         ER(ER_MISSING_SKIP_SLAVE));
        }
816

817 818
        pthread_mutex_unlock(&mi->rli.data_lock);
      }
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819
      else if (thd->lex->mi.pos || thd->lex->mi.relay_log_pos)
820 821
        push_warning(thd, MYSQL_ERROR::WARN_LEVEL_NOTE, ER_UNTIL_COND_IGNORED,
            ER(ER_UNTIL_COND_IGNORED));
822

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823
      if (!slave_errno)
824
        slave_errno = start_slave_threads(0 /*no mutex */,
825 826 827 828
					1 /* wait for start */,
					mi,
					master_info_file,relay_log_info_file,
					thread_mask);
829
    }
830 831 832
    else
      slave_errno = ER_BAD_SLAVE;
  }
833
  else
834 835 836
    //no error if all threads are already started, only a warning
    push_warning(thd, MYSQL_ERROR::WARN_LEVEL_NOTE, ER_SLAVE_WAS_RUNNING,
                 ER(ER_SLAVE_WAS_RUNNING));
837

838
  unlock_slave_threads(mi);
839

840 841
  if (slave_errno)
  {
842
    if (net_report)
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843
      my_message(slave_errno, ER(slave_errno), MYF(0));
844
    DBUG_RETURN(1);
845 846
  }
  else if (net_report)
847
    send_ok(thd);
848

849
  DBUG_RETURN(0);
850 851
}

852

853
int stop_slave(THD* thd, MASTER_INFO* mi, bool net_report )
854
{
855
  int slave_errno;
856 857
  if (!thd)
    thd = current_thd;
858

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859
  if (check_access(thd, SUPER_ACL, any_db,0,0,0))
860
    return 1;
861 862 863
  thd->proc_info = "Killing slave";
  int thread_mask;
  lock_slave_threads(mi);
864
  // Get a mask of _running_ threads
865
  init_thread_mask(&thread_mask,mi,0 /* not inverse*/);
866 867 868 869 870 871
  /*
    Below we will stop all running threads.
    But if the user wants to stop only one thread, do as if the other thread
    was stopped (as we don't wan't to touch the other thread), so set the
    bit to 0 for the other thread
  */
872 873
  if (thd->lex->slave_thd_opt)
    thread_mask &= thd->lex->slave_thd_opt;
874 875 876 877 878 879 880 881 882 883 884 885 886

  if (thread_mask)
  {
    slave_errno= terminate_slave_threads(mi,thread_mask,
                                         1 /*skip lock */);
  }
  else
  {
    //no error if both threads are already stopped, only a warning
    slave_errno= 0;
    push_warning(thd, MYSQL_ERROR::WARN_LEVEL_NOTE, ER_SLAVE_WAS_NOT_RUNNING,
                 ER(ER_SLAVE_WAS_NOT_RUNNING));
  }
887
  unlock_slave_threads(mi);
888 889
  thd->proc_info = 0;

890 891 892
  if (slave_errno)
  {
    if (net_report)
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893
      my_message(slave_errno, ER(slave_errno), MYF(0));
894 895 896
    return 1;
  }
  else if (net_report)
897
    send_ok(thd);
898 899 900 901

  return 0;
}

902 903 904 905 906 907 908 909 910 911 912 913 914 915 916

/*
  Remove all relay logs and start replication from the start

  SYNOPSIS
    reset_slave()
    thd			Thread handler
    mi			Master info for the slave

  RETURN
    0	ok
    1	error
*/


917
int reset_slave(THD *thd, MASTER_INFO* mi)
918 919 920
{
  MY_STAT stat_area;
  char fname[FN_REFLEN];
921 922
  int thread_mask= 0, error= 0;
  uint sql_errno=0;
923
  const char* errmsg=0;
924 925
  DBUG_ENTER("reset_slave");

926
  lock_slave_threads(mi);
927 928 929 930 931 932 933
  init_thread_mask(&thread_mask,mi,0 /* not inverse */);
  if (thread_mask) // We refuse if any slave thread is running
  {
    sql_errno= ER_SLAVE_MUST_STOP;
    error=1;
    goto err;
  }
934
  // delete relay logs, clear relay log coordinates
935 936 937
  if ((error= purge_relay_logs(&mi->rli, thd,
			       1 /* just reset */,
			       &errmsg)))
938
    goto err;
939

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guilhem@mysql.com committed
940 941 942 943 944 945 946 947
  /*
    Clear master's log coordinates and reset host/user/etc to the values
    specified in mysqld's options (only for good display of SHOW SLAVE STATUS;
    next init_master_info() (in start_slave() for example) would have set them
    the same way; but here this is for the case where the user does SHOW SLAVE
    STATUS; before doing START SLAVE;
  */
  init_master_info_with_options(mi);
948
  /*
949
     Reset errors (the idea is that we forget about the
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950 951
     old master).
  */
952
  clear_slave_error(&mi->rli);
953
  clear_until_condition(&mi->rli);
954

955
  // close master_info_file, relay_log_info_file, set mi->inited=rli->inited=0
956
  end_master_info(mi);
957
  // and delete these two files
958 959
  fn_format(fname, master_info_file, mysql_data_home, "", 4+32);
  if (my_stat(fname, &stat_area, MYF(0)) && my_delete(fname, MYF(MY_WME)))
960
  {
961 962
    error=1;
    goto err;
963
  }
964
  // delete relay_log_info_file
965
  fn_format(fname, relay_log_info_file, mysql_data_home, "", 4+32);
966
  if (my_stat(fname, &stat_area, MYF(0)) && my_delete(fname, MYF(MY_WME)))
967 968 969 970
  {
    error=1;
    goto err;
  }
971

972 973
err:
  unlock_slave_threads(mi);
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974
  if (error)
975
    my_error(sql_errno, MYF(0), errmsg);
976
  DBUG_RETURN(error);
977 978
}

979 980 981 982 983 984 985 986 987 988 989 990 991 992 993 994 995 996 997
/*

  Kill all Binlog_dump threads which previously talked to the same slave
  ("same" means with the same server id). Indeed, if the slave stops, if the
  Binlog_dump thread is waiting (pthread_cond_wait) for binlog update, then it
  will keep existing until a query is written to the binlog. If the master is
  idle, then this could last long, and if the slave reconnects, we could have 2
  Binlog_dump threads in SHOW PROCESSLIST, until a query is written to the
  binlog. To avoid this, when the slave reconnects and sends COM_BINLOG_DUMP,
  the master kills any existing thread with the slave's server id (if this id is
  not zero; it will be true for real slaves, but false for mysqlbinlog when it
  sends COM_BINLOG_DUMP to get a remote binlog dump).

  SYNOPSIS
    kill_zombie_dump_threads()
    slave_server_id     the slave's server id

*/
  
998

999 1000 1001
void kill_zombie_dump_threads(uint32 slave_server_id)
{
  pthread_mutex_lock(&LOCK_thread_count);
1002 1003 1004
  I_List_iterator<THD> it(threads);
  THD *tmp;

1005 1006 1007 1008
  while ((tmp=it++))
  {
    if (tmp->command == COM_BINLOG_DUMP &&
       tmp->server_id == slave_server_id)
1009
    {
1010 1011
      pthread_mutex_lock(&tmp->LOCK_delete);	// Lock from delete
      break;
1012 1013
    }
  }
1014
  pthread_mutex_unlock(&LOCK_thread_count);
1015 1016 1017 1018 1019 1020 1021
  if (tmp)
  {
    /*
      Here we do not call kill_one_thread() as
      it will be slow because it will iterate through the list
      again. We just to do kill the thread ourselves.
    */
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1022
    tmp->awake(THD::KILL_QUERY);
1023 1024
    pthread_mutex_unlock(&tmp->LOCK_delete);
  }
1025 1026
}

1027

1028
bool change_master(THD* thd, MASTER_INFO* mi)
1029
{
1030
  int thread_mask;
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1031 1032
  const char* errmsg= 0;
  bool need_relay_log_purge= 1;
1033 1034
  DBUG_ENTER("change_master");

1035
  lock_slave_threads(mi);
1036 1037
  init_thread_mask(&thread_mask,mi,0 /*not inverse*/);
  if (thread_mask) // We refuse if any slave thread is running
1038
  {
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1039
    my_message(ER_SLAVE_MUST_STOP, ER(ER_SLAVE_MUST_STOP), MYF(0));
1040
    unlock_slave_threads(mi);
1041
    DBUG_RETURN(TRUE);
1042
  }
1043

1044
  thd->proc_info = "Changing master";
1045
  LEX_MASTER_INFO* lex_mi= &thd->lex->mi;
1046
  // TODO: see if needs re-write
1047 1048
  if (init_master_info(mi, master_info_file, relay_log_info_file, 0,
		       thread_mask))
1049
  {
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1050
    my_message(ER_MASTER_INFO, ER(ER_MASTER_INFO), MYF(0));
1051
    unlock_slave_threads(mi);
1052
    DBUG_RETURN(TRUE);
1053 1054
  }

1055 1056 1057 1058
  /*
    Data lock not needed since we have already stopped the running threads,
    and we have the hold on the run locks which will keep all threads that
    could possibly modify the data structures from running
1059
  */
1060 1061 1062 1063 1064 1065

  /*
    If the user specified host or port without binlog or position, 
    reset binlog's name to FIRST and position to 4.
  */ 

1066 1067
  if ((lex_mi->host || lex_mi->port) && !lex_mi->log_file_name && !lex_mi->pos)
  {
1068
    mi->master_log_name[0] = 0;
1069
    mi->master_log_pos= BIN_LOG_HEADER_SIZE;
1070
  }
1071

1072
  if (lex_mi->log_file_name)
1073
    strmake(mi->master_log_name, lex_mi->log_file_name,
1074
	    sizeof(mi->master_log_name)-1);
1075
  if (lex_mi->pos)
1076
  {
1077
    mi->master_log_pos= lex_mi->pos;
1078
  }
1079
  DBUG_PRINT("info", ("master_log_pos: %d", (ulong) mi->master_log_pos));
1080 1081

  if (lex_mi->host)
1082
    strmake(mi->host, lex_mi->host, sizeof(mi->host)-1);
1083
  if (lex_mi->user)
1084
    strmake(mi->user, lex_mi->user, sizeof(mi->user)-1);
1085
  if (lex_mi->password)
1086
    strmake(mi->password, lex_mi->password, sizeof(mi->password)-1);
1087
  if (lex_mi->port)
1088
    mi->port = lex_mi->port;
1089
  if (lex_mi->connect_retry)
1090
    mi->connect_retry = lex_mi->connect_retry;
1091 1092 1093 1094 1095 1096 1097 1098 1099 1100 1101 1102 1103 1104 1105 1106 1107 1108 1109
 
  if (lex_mi->ssl != LEX_MASTER_INFO::SSL_UNCHANGED)
    mi->ssl= (lex_mi->ssl == LEX_MASTER_INFO::SSL_ENABLE);
  if (lex_mi->ssl_ca)
    strmake(mi->ssl_ca, lex_mi->ssl_ca, sizeof(mi->ssl_ca)-1);
  if (lex_mi->ssl_capath)
    strmake(mi->ssl_capath, lex_mi->ssl_capath, sizeof(mi->ssl_capath)-1);
  if (lex_mi->ssl_cert)
    strmake(mi->ssl_cert, lex_mi->ssl_cert, sizeof(mi->ssl_cert)-1);
  if (lex_mi->ssl_cipher)
    strmake(mi->ssl_cipher, lex_mi->ssl_cipher, sizeof(mi->ssl_cipher)-1);
  if (lex_mi->ssl_key)
    strmake(mi->ssl_key, lex_mi->ssl_key, sizeof(mi->ssl_key)-1);
#ifndef HAVE_OPENSSL
  if (lex_mi->ssl || lex_mi->ssl_ca || lex_mi->ssl_capath ||
      lex_mi->ssl_cert || lex_mi->ssl_cipher || lex_mi->ssl_key )
    push_warning(thd, MYSQL_ERROR::WARN_LEVEL_NOTE, 
                 ER_SLAVE_IGNORED_SSL_PARAMS, ER(ER_SLAVE_IGNORED_SSL_PARAMS));
#endif
1110

1111 1112
  if (lex_mi->relay_log_name)
  {
1113
    need_relay_log_purge= 0;
1114 1115 1116 1117
    strmake(mi->rli.group_relay_log_name,lex_mi->relay_log_name,
	    sizeof(mi->rli.group_relay_log_name)-1);
    strmake(mi->rli.event_relay_log_name,lex_mi->relay_log_name,
	    sizeof(mi->rli.event_relay_log_name)-1);
1118 1119 1120 1121
  }

  if (lex_mi->relay_log_pos)
  {
1122
    need_relay_log_purge= 0;
1123
    mi->rli.group_relay_log_pos= mi->rli.event_relay_log_pos= lex_mi->relay_log_pos;
1124 1125
  }

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  /*
    If user did specify neither host nor port nor any log name nor any log
    pos, i.e. he specified only user/password/master_connect_retry, he probably
    wants replication to resume from where it had left, i.e. from the
    coordinates of the **SQL** thread (imagine the case where the I/O is ahead
    of the SQL; restarting from the coordinates of the I/O would lose some
    events which is probably unwanted when you are just doing minor changes
    like changing master_connect_retry).
    A side-effect is that if only the I/O thread was started, this thread may
    restart from ''/4 after the CHANGE MASTER. That's a minor problem (it is a
    much more unlikely situation than the one we are fixing here).
    Note: coordinates of the SQL thread must be read here, before the
    'if (need_relay_log_purge)' block which resets them.
  */
  if (!lex_mi->host && !lex_mi->port &&
      !lex_mi->log_file_name && !lex_mi->pos &&
      need_relay_log_purge)
   {
     /*
       Sometimes mi->rli.master_log_pos == 0 (it happens when the SQL thread is
       not initialized), so we use a max().
       What happens to mi->rli.master_log_pos during the initialization stages
       of replication is not 100% clear, so we guard against problems using
       max().
      */
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     mi->master_log_pos = max(BIN_LOG_HEADER_SIZE,
			      mi->rli.group_master_log_pos);
     strmake(mi->master_log_name, mi->rli.group_master_log_name,
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1154 1155
             sizeof(mi->master_log_name)-1);
  }
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  /*
    Relay log's IO_CACHE may not be inited, if rli->inited==0 (server was never
    a slave before).
  */
  flush_master_info(mi, 0);
1161
  if (need_relay_log_purge)
1162
  {
1163
    relay_log_purge= 1;
1164
    thd->proc_info="Purging old relay logs";
1165 1166
    if (purge_relay_logs(&mi->rli, thd,
			 0 /* not only reset, but also reinit */,
1167 1168
			 &errmsg))
    {
1169
      my_error(ER_RELAY_LOG_FAIL, MYF(0), errmsg);
1170
      unlock_slave_threads(mi);
1171
      DBUG_RETURN(TRUE);
1172 1173 1174 1175 1176
    }
  }
  else
  {
    const char* msg;
1177
    relay_log_purge= 0;
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    /* Relay log is already initialized */
    if (init_relay_log_pos(&mi->rli,
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			   mi->rli.group_relay_log_name,
			   mi->rli.group_relay_log_pos,
1182
			   0 /*no data lock*/,
1183
			   &msg, 0))
1184
    {
1185
      my_error(ER_RELAY_LOG_INIT, MYF(0), msg);
1186
      unlock_slave_threads(mi);
1187
      DBUG_RETURN(TRUE);
1188
    }
1189
  }
1190
  mi->rli.group_master_log_pos = mi->master_log_pos;
1191
  DBUG_PRINT("info", ("master_log_pos: %d", (ulong) mi->master_log_pos));
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  /*
    Coordinates in rli were spoilt by the 'if (need_relay_log_purge)' block,
    so restore them to good values. If we left them to ''/0, that would work;
    but that would fail in the case of 2 successive CHANGE MASTER (without a
    START SLAVE in between): because first one would set the coords in mi to
    the good values of those in rli, the set those in rli to ''/0, then
    second CHANGE MASTER would set the coords in mi to those of rli, i.e. to
    ''/0: we have lost all copies of the original good coordinates.
    That's why we always save good coords in rli.
  */
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1203
  mi->rli.group_master_log_pos= mi->master_log_pos;
1204 1205
  strmake(mi->rli.group_master_log_name,mi->master_log_name,
	  sizeof(mi->rli.group_master_log_name)-1);
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1206

1207 1208
  if (!mi->rli.group_master_log_name[0]) // uninitialized case
    mi->rli.group_master_log_pos=0;
1209 1210

  pthread_mutex_lock(&mi->rli.data_lock);
1211
  mi->rli.abort_pos_wait++; /* for MASTER_POS_WAIT() to abort */
1212 1213
  /* Clear the errors, for a clean start */
  clear_slave_error(&mi->rli);
1214
  clear_until_condition(&mi->rli);
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1215 1216 1217 1218 1219 1220
  /*
    If we don't write new coordinates to disk now, then old will remain in
    relay-log.info until START SLAVE is issued; but if mysqld is shutdown
    before START SLAVE, then old will remain in relay-log.info, and will be the
    in-memory value at restart (thus causing errors, as the old relay log does
    not exist anymore).
1221
  */
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1222
  flush_relay_log_info(&mi->rli);
1223
  pthread_cond_broadcast(&mi->data_cond);
1224
  pthread_mutex_unlock(&mi->rli.data_lock);
1225

1226
  unlock_slave_threads(mi);
1227
  thd->proc_info = 0;
1228
  send_ok(thd);
1229
  DBUG_RETURN(FALSE);
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}

1232
int reset_master(THD* thd)
1233
{
1234
  if (!mysql_bin_log.is_open())
1235
  {
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1236 1237
    my_message(ER_FLUSH_MASTER_BINLOG_CLOSED,
               ER(ER_FLUSH_MASTER_BINLOG_CLOSED), MYF(ME_BELL+ME_WAITTANG));
1238
    return 1;
1239
  }
1240
  return mysql_bin_log.reset_logs(thd);
1241 1242
}

1243 1244 1245 1246
int cmp_master_pos(const char* log_file_name1, ulonglong log_pos1,
		   const char* log_file_name2, ulonglong log_pos2)
{
  int res;
1247 1248
  uint log_file_name1_len=  strlen(log_file_name1);
  uint log_file_name2_len=  strlen(log_file_name2);
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1250 1251 1252 1253 1254 1255 1256 1257
  //  We assume that both log names match up to '.'
  if (log_file_name1_len == log_file_name2_len)
  {
    if ((res= strcmp(log_file_name1, log_file_name2)))
      return res;
    return (log_pos1 < log_pos2) ? -1 : (log_pos1 == log_pos2) ? 0 : 1;
  }
  return ((log_file_name1_len < log_file_name2_len) ? -1 : 1);
1258 1259
}

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1260

1261
bool mysql_show_binlog_events(THD* thd)
1262
{
1263
  Protocol *protocol= thd->protocol;
1264 1265
  DBUG_ENTER("show_binlog_events");
  List<Item> field_list;
1266
  const char *errmsg = 0;
1267 1268
  IO_CACHE log;
  File file = -1;
1269
  Format_description_log_event *description_event= new
1270
    Format_description_log_event(3); /* MySQL 4.0 by default */
1271 1272

  Log_event::init_show_field_list(&field_list);
1273 1274
  if (protocol->send_fields(&field_list,
                            Protocol::SEND_NUM_ROWS | Protocol::SEND_EOF))
1275
    DBUG_RETURN(TRUE);
1276

1277 1278
  if (mysql_bin_log.is_open())
  {
1279
    LEX_MASTER_INFO *lex_mi= &thd->lex->mi;
1280
    ha_rows event_count, limit_start, limit_end;
1281
    my_off_t pos = max(BIN_LOG_HEADER_SIZE, lex_mi->pos); // user-friendly
1282 1283
    char search_file_name[FN_REFLEN], *name;
    const char *log_file_name = lex_mi->log_file_name;
1284
    pthread_mutex_t *log_lock = mysql_bin_log.get_log_lock();
1285 1286
    LOG_INFO linfo;
    Log_event* ev;
1287

1288 1289
    limit_start= thd->lex->current_select->offset_limit;
    limit_end= thd->lex->current_select->select_limit + limit_start;
1290

1291
    name= search_file_name;
1292 1293 1294
    if (log_file_name)
      mysql_bin_log.make_log_name(search_file_name, log_file_name);
    else
1295
      name=0;					// Find first log
1296 1297 1298

    linfo.index_file_offset = 0;
    thd->current_linfo = &linfo;
1299

1300
    if (mysql_bin_log.find_log_pos(&linfo, name, 1))
1301 1302 1303 1304 1305 1306 1307 1308
    {
      errmsg = "Could not find target log";
      goto err;
    }

    if ((file=open_binlog(&log, linfo.log_file_name, &errmsg)) < 0)
      goto err;

1309
    pthread_mutex_lock(log_lock);
1310

1311
    /*
1312
       open_binlog() sought to position 4.
1313 1314 1315
       Read the first event in case it's a Format_description_log_event, to
       know the format. If there's no such event, we are 3.23 or 4.x. This
       code, like before, can't read 3.23 binlogs.
1316 1317 1318
       This code will fail on a mixed relay log (one which has Format_desc then
       Rotate then Format_desc).
    */
1319

1320 1321 1322 1323
    ev = Log_event::read_log_event(&log,(pthread_mutex_t*)0,description_event);
    if (ev)
    {
      if (ev->get_type_code() == FORMAT_DESCRIPTION_EVENT)
1324 1325
      {
        delete description_event;
1326
        description_event= (Format_description_log_event*) ev;
1327
      }
1328 1329 1330 1331
      else
        delete ev;
    }

1332 1333
    my_b_seek(&log, pos);

1334 1335 1336 1337 1338
    if (!description_event->is_valid())
    {
      errmsg="Invalid Format_description event; could be out of memory";
      goto err;
    }
1339

1340
    for (event_count = 0;
1341
	 (ev = Log_event::read_log_event(&log,(pthread_mutex_t*)0,description_event)); )
1342 1343
    {
      if (event_count >= limit_start &&
1344
	  ev->net_send(protocol, linfo.log_file_name, pos))
1345 1346 1347
      {
	errmsg = "Net error";
	delete ev;
1348
	pthread_mutex_unlock(log_lock);
1349 1350 1351 1352
	goto err;
      }

      pos = my_b_tell(&log);
1353 1354 1355 1356 1357 1358 1359 1360 1361
      delete ev;

      if (++event_count >= limit_end)
	break;
    }

    if (event_count < limit_end && log.error)
    {
      errmsg = "Wrong offset or I/O error";
1362
      pthread_mutex_unlock(log_lock);
1363 1364
      goto err;
    }
1365

1366
    pthread_mutex_unlock(log_lock);
1367 1368 1369
  }

err:
1370
  delete description_event;
1371 1372 1373 1374 1375
  if (file >= 0)
  {
    end_io_cache(&log);
    (void) my_close(file, MYF(MY_WME));
  }
1376

1377 1378
  if (errmsg)
  {
1379 1380
    my_error(ER_ERROR_WHEN_EXECUTING_COMMAND, MYF(0),
             "SHOW BINLOG EVENTS", errmsg);
1381
    DBUG_RETURN(TRUE);
1382 1383
  }

1384
  send_eof(thd);
1385 1386 1387
  pthread_mutex_lock(&LOCK_thread_count);
  thd->current_linfo = 0;
  pthread_mutex_unlock(&LOCK_thread_count);
1388
  DBUG_RETURN(TRUE);
1389 1390
}

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1391

1392
bool show_binlog_info(THD* thd)
1393
{
1394
  Protocol *protocol= thd->protocol;
1395 1396 1397
  DBUG_ENTER("show_binlog_info");
  List<Item> field_list;
  field_list.push_back(new Item_empty_string("File", FN_REFLEN));
1398 1399
  field_list.push_back(new Item_return_int("Position",20,
					   MYSQL_TYPE_LONGLONG));
1400 1401
  field_list.push_back(new Item_empty_string("Binlog_Do_DB",255));
  field_list.push_back(new Item_empty_string("Binlog_Ignore_DB",255));
1402

1403 1404
  if (protocol->send_fields(&field_list,
                            Protocol::SEND_NUM_ROWS | Protocol::SEND_EOF))
1405
    DBUG_RETURN(TRUE);
1406 1407
  protocol->prepare_for_resend();

1408 1409 1410 1411 1412
  if (mysql_bin_log.is_open())
  {
    LOG_INFO li;
    mysql_bin_log.get_current_log(&li);
    int dir_len = dirname_length(li.log_file_name);
1413
    protocol->store(li.log_file_name + dir_len, &my_charset_bin);
1414 1415 1416 1417
    protocol->store((ulonglong) li.pos);
    protocol->store(&binlog_do_db);
    protocol->store(&binlog_ignore_db);
    if (protocol->write())
1418
      DBUG_RETURN(TRUE);
1419
  }
1420
  send_eof(thd);
1421
  DBUG_RETURN(FALSE);
1422
}
1423

1424

1425
/*
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1426
  Send a list of all binary logs to client
1427 1428 1429 1430 1431 1432

  SYNOPSIS
    show_binlogs()
    thd		Thread specific variable

  RETURN VALUES
1433 1434
    FALSE OK
    TRUE  error
1435 1436
*/

1437
bool show_binlogs(THD* thd)
1438
{
1439
  IO_CACHE *index_file;
1440 1441
  char fname[FN_REFLEN];
  List<Item> field_list;
1442
  uint length;
1443 1444
  Protocol *protocol= thd->protocol;
  DBUG_ENTER("show_binlogs");
1445 1446

  if (!mysql_bin_log.is_open())
1447
  {
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1448
    my_message(ER_NO_BINARY_LOGGING, ER(ER_NO_BINARY_LOGGING), MYF(0));
1449
    return 1;
1450
  }
1451

1452
  field_list.push_back(new Item_empty_string("Log_name", 255));
1453 1454
  if (protocol->send_fields(&field_list,
                            Protocol::SEND_NUM_ROWS | Protocol::SEND_EOF))
1455
    DBUG_RETURN(TRUE);
1456
  mysql_bin_log.lock_index();
1457 1458 1459 1460 1461 1462
  index_file=mysql_bin_log.get_index_file();
  
  reinit_io_cache(index_file, READ_CACHE, (my_off_t) 0, 0, 0);

  /* The file ends with EOF or empty line */
  while ((length=my_b_gets(index_file, fname, sizeof(fname))) > 1)
1463
  {
1464
    protocol->prepare_for_resend();
1465
    int dir_len = dirname_length(fname);
1466
    /* The -1 is for removing newline from fname */
1467
    protocol->store(fname + dir_len, length-1-dir_len, &my_charset_bin);
1468
    if (protocol->write())
1469
      goto err;
1470
  }
1471
  mysql_bin_log.unlock_index();
1472
  send_eof(thd);
1473
  DBUG_RETURN(FALSE);
1474

1475 1476
err:
  mysql_bin_log.unlock_index();
1477
  DBUG_RETURN(TRUE);
1478 1479
}

1480

1481 1482
int log_loaded_block(IO_CACHE* file)
{
1483
  LOAD_FILE_INFO *lf_info;
1484
  uint block_len ;
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1485 1486 1487

  /* file->request_pos contains position where we started last read */
  char* buffer = (char*) file->request_pos;
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1488
  if (!(block_len = (char*) file->read_end - (char*) buffer))
1489
    return 0;
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1490
  lf_info = (LOAD_FILE_INFO*) file->arg;
1491 1492 1493 1494 1495 1496
  if (lf_info->last_pos_in_file != HA_POS_ERROR &&
      lf_info->last_pos_in_file >= file->pos_in_file)
    return 0;
  lf_info->last_pos_in_file = file->pos_in_file;
  if (lf_info->wrote_create_file)
  {
1497
    Append_block_log_event a(lf_info->thd, lf_info->db, buffer, block_len,
1498
			     lf_info->log_delayed);
1499 1500 1501 1502 1503 1504
    mysql_bin_log.write(&a);
  }
  else
  {
    Create_file_log_event c(lf_info->thd,lf_info->ex,lf_info->db,
			    lf_info->table_name, *lf_info->fields,
1505
			    lf_info->handle_dup, lf_info->ignore, buffer,
1506
			    block_len, lf_info->log_delayed);
1507 1508
    mysql_bin_log.write(&c);
    lf_info->wrote_create_file = 1;
1509
    DBUG_SYNC_POINT("debug_lock.created_file_event",10);
1510 1511 1512
  }
  return 0;
}
1513

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1514
#endif /* HAVE_REPLICATION */
1515 1516